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Reappraisal of cis effect in 1,2-dihaloethenes: An improved virtual orbital multireference approach

机译:重新评估1,2-二卤代蒽的顺式作用:一种改进的虚拟轨道多参考方法

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摘要

Computed relative stabilities for isomers of 1,2-difluoroethene and 1,2-dichloroethene isomers are compared with predictions based on chemical hardness (eta) and electrophilicity (omega) using the principles of maximum hardness and minimum electrophilicity. The chemical hardness and electrophilicity deduced either from improved virtual orbital (IVO) energies or from correlated treatments correctly predict that cis 1,2-difluoroethene and 1,2-dichloroethene are energetically more stable than the corresponding trans isomers, and the ground state energies from multireference perturbation theory with IVO orbitals agree with these predictions. However, when the same quantities are computed using Hartree-Fock orbitals, serious inconsistencies between the two approaches emerge in predicting the stability of the isomers of the 1,2-dihaloethenes. The present study clearly demonstrates that the IVO energies are appropriate for the computation of hardness related parameters, notably the chemical hardness and electrophilicity. Moreover, the IVO methods also provide smooth potential energy curves for the cis-trans isomerization of the two 1,2-dihaloethenes. (C) 2008 American Institute of Physics.
机译:使用最大硬度和最小亲电性原理,将计算得出的1,2-二氟乙烯和1,2-二氯乙烯异构体的相对稳定性与基于化学硬度(η)和亲电性(Ω)的预测值进行比较。由改善的虚拟轨道(IVO)能量或相关处理得出的化学硬度和亲电性正确预测,顺式1,2-二氟乙烯和1,2-二氯乙烯在能量上比相应的反式异构体更稳定,而基态能量来自具有IVO轨道的多参考摄动理论与这些预测一致。但是,当使用Hartree-Fock轨道计算相同的量时,在预测1,2-二卤代蒽的异构体的稳定性时,两种方法之间会出现严重的不一致之处。本研究清楚地表明,IVO能量适用于硬度相关参数的计算,尤其是化学硬度和亲电性。此外,IVO方法还为两个1,2-二卤代蒽的顺反异构化提供了平滑的势能曲线。 (C)2008美国物理研究所。

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